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Product Information

Availability
Only 20 left in stock - order soon.
Seller
KAILIXI

About

This spring oscillator demonstration device visualizes oscillatory motion and mechanical‑force properties for physical exploration. Overall dimensions: height 47.5 cm, width 31 cm, base 13 cm, well‑suited for desktop workstations.
Robust metal‑frame build made up of top crossbar, two silver upright support rods and solid black rectangular base. The weighted base effectively reduces shifting and wobble throughout oscillation tests.
Minimalist experimental layout allows quick assembly. All key moving parts remain in full view, offering sharp visual feedback for comparative observation of vibration states.
A single coiled spring suspends from top‑center position and carries a spherical metal weight. Obvious displacement of the weight enables straightforward visual tracking of oscillatory movement.
Dedicated demonstration apparatus for investigating spring‑driven motion patterns. Supports repeated runs to observe vibration amplitude, cycle period and basic mechanical‑wave related behaviours.

Product Description

Conduct mechanical‑motion research with this spring oscillator teaching apparatus.It provides tangible demonstration of oscillatory movement and relevant mechanical‑force principles.Built around a heavy‑duty metal‑frame structure,this unit features a top crossbar together with two silver‑toned upright support rods.A sturdy black rectangular base keeps the whole setup stable while oscillations take place.Hanging from the top‑center mounting position is one coiled spring,which holds a 5 cm spherical metal weight below.The streamlined experimental structure produces highly visible motion for tracking spring‑driven oscillation.Practical overall dimensions:47.5 cm in height, 31 cm in width, base size 13 cm.Compact footprint sits securely on most flat workbenches and operating surfaces.This practical demonstration equipment enables direct observation of force interaction and oscillatory motion.It helps translate abstract mechanical theories into visible phenomena for physical experimental analysis.

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